Sharangi Sanhati, Chakraborty Barsha, Jha Raushan Kumar, Mandal Swarnadeep, Koner Apurba Lal, Kumar Sangit
Department of Chemistry, Indian Institute of Science Education and Research (IISER) Bhopal Academic Building - 2, Bhopal By-pass Road, Bhauri Bhopal-462066 India
Chem Sci. 2024 Dec 13;16(2):709-720. doi: 10.1039/d4sc07817a. eCollection 2025 Jan 2.
Herein, we unveiled a regio- and diastereoselective synthesis of cyclobutylated phenothiazines, a unique class of structural congeners of phenothiazines visible-light-irradiated intermolecular [2 + 2]-cycloaddition reaction, from readily available naphthoquinones, 2-aminothiophenols, and styrenes, either in a two-step or three-component coupling process. By varying substitutions in all three coupling partners, a library of cyclobutylated phenothiazines, including late-stage derivatization with five commercial drugs, has been realized with up to 97% isolated yield. In contrast to the reported pathways, the developed [2 + 2]-photocycloaddition seems to proceed a 'photoinduced-electron-transfer' (PET) mechanism, which is well corroborated with the experimental observations, Rehm-Weller equation, and computation studies. Delightfully, a wavelength-gated reversibility of the [2 + 2]-photocycloaddition reaction has been accomplished on the synthesized cyclobutylated phenothiazines. By monitoring the rate of the cycloreversion reactions for different derivatives, a structure-activity relationship has also been achieved. Interestingly, this phenomenon was further replicated inside living cells, which leads to turn-on emission and is applied for photoresponsive cell imaging. This marks the first report of a light-triggered [2 + 2]-cycloreversion phenomenon occurring inside a live cell, leading to cell imaging. Moreover, the synthesized drug derivatives were utilized for synchronous cell imaging as well as drug delivery through the developed [2 + 2]-photocycloreversion process, which demonstrated the potential applicability of this class of molecules.
在此,我们展示了一种区域和非对映选择性合成环丁基化吩噻嗪的方法,吩噻嗪是一类独特的吩噻嗪结构类似物,通过可见光照射的分子间[2 + 2]环加成反应,由易于获得的萘醌、2-氨基硫酚和苯乙烯在两步或三组分偶联过程中合成。通过改变所有三个偶联伙伴中的取代基,已实现了一个环丁基化吩噻嗪库,包括用五种商业药物进行后期衍生化,分离产率高达97%。与报道的途径不同,所开发的[2 + 2]光环加成反应似乎通过“光诱导电子转移”(PET)机制进行,这与实验观察、雷姆 - 韦勒方程和计算研究得到了很好的证实。令人高兴的是,在合成的环丁基化吩噻嗪上实现了[2 + 2]光环加成反应的波长门控可逆性。通过监测不同衍生物的环化逆转反应速率,还实现了构效关系。有趣的是,这种现象在活细胞内进一步重现,导致开启发射,并应用于光响应细胞成像。这标志着首次报道在活细胞内发生光触发的[2 + 2]环化逆转现象,从而实现细胞成像。此外,合成的药物衍生物通过所开发的[2 + 2]光环化逆转过程用于同步细胞成像以及药物递送,这证明了这类分子的潜在适用性。